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SUMMARY:Development of thermoelectric silicide materials and modules forpo
 wer generation
DTSTART:20260303T150000Z
DTEND:20260303T160000Z
DTSTAMP:20260813T160155Z
UID:2b708b13-36c9-4933-b85a-cf7d7205337d
SEQUENCE:1
CREATED:20260227T144627Z
DESCRIPTION: The application of thermoelectric technology in the industria
 lwaste heat recovery sector is gaining increasing attention due tothe sign
 ificant environmental benefits. Mg- and Mn-basedsilicides are promising hi
 gh-performance thermoelectric materialsdue to their relatively high Seebec
 k coefficients\, good electricalconductivity\, and low thermal conductivit
 y. In addition\, thesecompounds are composed of earth-abundant and environ
 mentallyfriendly elements\, and they are suitable for mid-temperaturetherm
 oelectric applications. This presentation covers the synthesis of selected
  silicides as wellas the development of thermoelectric modules based on n-
 typemagnesium silicide and p-type manganese silicide. Key aspectssuch as m
 aterial optimization and performance\, metallization andbonding methods\, 
 and overall module performance are addressed. 
LAST-MODIFIED:20260227T144627Z
LOCATION:DF Seminar Room (2-8.3)\, 2nd floor of Physics Building
URL:http://df.vps.tecnico.ulisboa.pt/en/events/development-of-thermoelectr
 ic-silicide-materials-and-modules-forpower-generation/
X-ALT-DESC;FMTTYPE=text/html:<p data-block-key="0644g"> The application of
  thermoelectric technology in the industrialwaste heat recovery sector is 
 gaining increasing attention due tothe significant environmental benefits.
  Mg- and Mn-basedsilicides are promising high-performance thermoelectric m
 aterialsdue to their relatively high Seebeck coefficients\, good electrica
 lconductivity\, and low thermal conductivity. <br/><br/>In addition\, thes
 ecompounds are composed of earth-abundant and environmentallyfriendly elem
 ents\, and they are suitable for mid-temperaturethermoelectric application
 s. This presentation covers the synthesis of selected silicides as wellas 
 the development of thermoelectric modules based on n-typemagnesium silicid
 e and p-type manganese silicide. Key aspectssuch as material optimization 
 and performance\, metallization andbonding methods\, and overall module pe
 rformance are addressed. </p>
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